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Palmitate‐TLR4 signaling regulates the histone demethylase, JMJD3, in macrophages and impairs diabetic wound healing

机译:棕榈酸酯检测TLR4信号调节组蛋白JMJD3 demethylase,巨噬细胞和损害糖尿病伤口愈合

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Abstract Chronic macrophage inflammation is a hallmark of type 2 diabetes (T2D) and linked to the development of secondary diabetic complications. T2D is characterized by excess concentrations of saturated fatty acids (SFA) that activate innate immune inflammatory responses, however, mechanism(s) by which SFAs control inflammation is unknown. Using monocyte‐macrophages isolated from human blood and murine models, we demonstrate that palmitate (C16:0), the most abundant circulating SFA in T2D, increases expression of the histone demethylase, Jmjd3. Upregulation of Jmjd3 results in removal of the repressive histone methylation (H3K27me3) mark on NFκB‐mediated inflammatory gene promoters driving macrophage‐mediated inflammation. We identify that the effects of palmitate are fatty acid specific, as laurate (C12:0) does not regulate Jmjd3 and the associated inflammatory profile. Further, palmitate‐induced Jmjd3 expression is controlled via TLR4/MyD88‐dependent signaling mechanism, where genetic depletion of TLR4 (Tlr4?/?) or MyD88 (MyD88?/?) negated the palmitate‐induced changes in Jmjd3 and downstream NFκB‐induced inflammation. Pharmacological inhibition of Jmjd3 using a small molecule inhibitor (GSK‐J4) reduced macrophage inflammation and improved diabetic wound healing. Together, we conclude that palmitate contributes to the chronic Jmjd3‐mediated activation of macrophages in diabetic peripheral tissue and a histone demethylase inhibitor‐based therapy may represent a novel treatment for nonhealing diabetic wounds.
机译:抽象的慢性巨噬细胞炎症2型糖尿病的标志(T2D)和联系继发性糖尿病的发展并发症。饱和脂肪酸的浓度(SFA)激活先天免疫炎症反应,然而,美国的机制(s)控制炎症是未知的。单核细胞巨噬细胞从人类血液分离和小鼠模型,我们表明,棕榈酸酯(0),循环SFA最丰富T2D,增加组蛋白的表达demethylase Jmjd3。在切除压迫组蛋白甲基化(H3K27me3)在NFκB介导炎症基因启动子驱动巨噬细胞介导的炎症。棕榈酸酯脂肪酸具体,如月桂酸盐(C12:0)不规范Jmjd3和炎症相关的配置文件。棕榈酸诱导Jmjd3表达式控制通过TLR4 / MyD88高依赖的信号机制TLR4的遗传损耗(TLR4吗? / ?)MyD88 (MyD88 ? / ?)否定棕榈酸诱导Jmjd3和下游NFκB的变化引起的炎症。使用小分子抑制剂(GSK阁下)应承担的减少巨噬细胞炎症和改善糖尿病伤口愈合。棕榈酸酯对慢性Jmjd3介导激活的巨噬细胞糖尿病外周组织和组蛋白demethylase抑制剂的基础治疗可能代表一种治疗糖尿病伤口愈合。

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